A clinker-assisted R&D device with identification function

By designing a clinker auxiliary R&D device with identification function, the problems of confusion and inaccurate timing caused by particle size differences in clinker R&D were solved, and the storage and reaction time were accurately recorded, improving the traceability and moisture resistance of clinker quality.

CN224278056UActive Publication Date: 2026-05-26GEZHOUBA LAOHEKOU CEMENT
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GEZHOUBA LAOHEKOU CEMENT
Filing Date
2025-06-30
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

During the clinker development process, small particle size and large differences in various dimensions lead to confusion, excessive storage time, inaccurate timing, difficulty in tracing the manufacturing process, and affect clinker quality.

Method used

A clinker-assisted R&D device with identification function was designed, which includes a storage rack, a sealed container, a timer, and a photoelectric switch. The photoelectric switch is linked to the timer to record the reaction time, and the sealed container prevents the clinker from getting damp, ensuring accurate recording of storage and reaction time.

Benefits of technology

It enables accurate recording of storage and reaction times, prevents clinker from getting damp, and improves the traceability of clinker quality and moisture protection during storage.

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Abstract

This utility model relates to the technical field of clinker R&D auxiliary equipment, and discloses a clinker auxiliary R&D device with identification function. It includes a storage rack, an external timer, and a sealed container extending outwards from the storage rack. An elastic sheet is located inside the storage rack, and a trigger-type locking block is connected to the other end of the elastic sheet to limit the position of the sealed container. A photoelectric switch, corresponding to the position of the trigger-type locking block and capable of sensing its current position, is located inside the storage rack. The photoelectric switch is linked with the timer. A sealing plate is hinged to the top of the sealed container. A locking element is located outside the sealed container, with its output end linked to the sealing plate for locking and its input end abutting against the storage rack. This clinker auxiliary R&D device with identification function has the advantages of convenient recording of storage and reaction times and good moisture-proof storage.
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Description

Technical Field

[0001] This utility model relates to the field of clinker R&D auxiliary equipment technology, specifically a clinker R&D auxiliary device with identification function. Background Technology

[0002] During clinker production, particle sizes vary, and the chemical composition, mineral composition, and performance indicators of each size differ significantly. There are also large differences between different kiln lines. It is generally believed that particles smaller than 5mm contain fly sand and have poor clinker quality. However, in some clinker studies, screening test results show that clinker with this particle size has the highest 28-day strength. In order to ensure the performance of clinker, it is necessary to conduct targeted and effective research and testing on clinker.

[0003] During the research and development process, since the target particle size is usually small, it is easy to cause confusion when conducting unified research on various small-particle clinker. The waiting time for placing the clinker to cool or react is too long, and the timing process is usually done by the experimenters themselves. If the timing is not properly marked, it is easy to lose track of the specific manufacturing process, resulting in losses and inconvenience. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this utility model provides a clinker auxiliary R&D device with identification function. It has the advantages of conveniently recording storage and reaction times and achieving good storage moisture protection. It solves the problem that the waiting time is too long when clinker needs to be placed for cooling or reaction, and the timing process is usually done by the experimenter. If the identification is not done properly, it is easy to lose track of the specific manufacturing process, resulting in losses and inconvenience.

[0006] (II) Technical Solution

[0007] The technical solution of this utility model to solve the above-mentioned technical problems is as follows: A clinker auxiliary R&D device with identification function includes a storage rack, a timer is provided on the outside of the storage rack, a sealed container extending to the outside of the storage rack is placed inside the storage rack, an elastic sheet is provided inside the storage rack, and a trigger-type locking block for limiting the position of the sealed container is connected to the other end of the elastic sheet. A photoelectric switch corresponding to the position of the trigger-type locking block and capable of sensing its current position is provided inside the storage rack. The photoelectric switch is linked with the timer. A sealing plate is hinged to the top of the sealed container. A locking member is provided on the outside of the sealed container, with its output end linked to the sealing plate for locking and its input end abutting against the storage rack. An identification sticker is provided on the outside of the sealed container.

[0008] Based on the above technical solution, the present invention can be further improved as follows.

[0009] Furthermore, a damping pad is fixed inside the storage rack to form a compression with the outer wall of the sealed container, and a chamfer is provided on the bottom side of the sealed container to drive the movement of the trigger-type locking block.

[0010] Furthermore, the side wall of the sealed container is provided with a slot, the trigger-type locking block extends into the slot and triggers the photoelectric switch when inside the slot, the slot is arc-shaped and the trigger-type locking block is adapted to its shape and size.

[0011] Furthermore, the locking component includes a locking sleeve disposed outside the sealed container, a limiting block slidably disposed inside the locking sleeve, an elastic element connected to the inner wall of the locking sleeve on one side end of the limiting block, and a pressing rod extending to the outside of the locking sleeve and abutting against the storage rack slidably connected inside the locking sleeve.

[0012] Furthermore, both sides of the bottom wall of the limiting block are inclined, and the inclined surfaces on both sides are pressed against the extrusion rod and the outer top wall of the sealing plate, respectively.

[0013] Furthermore, the sealing plate and the sealing tank are rotatably connected by a hinge, the locking sleeve is positioned opposite the hinge, and the elastic plate and the locking sleeve are located on the same side.

[0014] This utility model provides a clinker auxiliary R&D device with identification function, which has the following effects:

[0015] 1. By setting up a sealed container, when clinker needs to be stored, it can be placed directly through the sealed container. When it is connected to the storage rack, the sealing plate can be locked under the influence of the locking device to prevent external air from entering and causing the clinker to get damp. This can easily lead to a large quality difference between the stored experimental clinker and the newly produced experimental clinker.

[0016] 2. Simultaneously, if chemical testing is required during the clinker inspection process, and the reaction needs to be carried out in an environmental state, the sealing plate can be opened and the sealed container can be connected to the storage rack. During the connection process, the sealed container pushes the trigger-type locking block to move and triggers the photoelectric switch, which starts the timer. The reaction time can be recorded, and the quality of the current clinker can be judged by the chemical reaction time data.

[0017] In summary, this device has the advantages of conveniently recording storage and reaction times and achieving good moisture protection during storage. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is an enlarged view of point A in the figure of this utility model;

[0020] Figure 3 This is an enlarged view of section B in the figure of this utility model;

[0021] Figure 4 This is a diagram showing the connection between the limiting block and the locking sleeve of this utility model.

[0022] In the diagram: 1. Storage rack; 2. Timer; 3. Sealed container; 4. Elastic sheet; 5. Trigger-type locking block; 6. Photoelectric switch; 7. Sealing plate; 8. Locking element; 81. Locking sleeve; 82. Limiting block; 83. Elastic element; 84. Pressing rod. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figure 1-4 This utility model provides a clinker auxiliary R&D device with identification function, including a storage rack 1, a timer 2 set on the outside of the storage rack 1, a sealed container 3 extending to the outside of the storage rack 1, an elastic sheet 4 set inside the storage rack 1, a trigger-type locking block 5 connected to the other end of the elastic sheet 4 to limit the position of the sealed container 3, a photoelectric switch 6 set inside the storage rack 1 corresponding to the position of the trigger-type locking block 5 and capable of sensing its current position, the photoelectric switch 6 and the timer 2 are linked, a sealing plate 7 is hinged to the top of the sealed container 3, a locking member 8 is set on the outside of the sealed container 3 with the output end linked to the sealing plate 7 to lock it and the input end abutting against the storage rack 1, and an identification sticker is set on the outside of the sealed container 3.

[0025] In particular, multiple sets of timer 2, sealing container 3, elastic sheet 4 and corresponding components should be provided to facilitate the storage of multiple clinker products.

[0026] Furthermore, a damping pad that compresses against the outer wall of the sealed container 3 is fixed inside the storage rack 1, and a chamfer is provided on the bottom side of the sealed container 3 to drive the movement of the trigger-type locking block 5.

[0027] Furthermore, the side wall of the sealed container 3 is provided with a slot, the trigger-type locking block 5 extends into the slot and triggers the photoelectric switch 6 when inside the slot, the slot is arc-shaped and the trigger-type locking block 5 is adapted to its shape and size.

[0028] The triggering method of the timer 2 and the photoelectric switch 6 is that the photoelectric switch 6 only performs timing operation when the block is off. There are three states of the trigger-type locking block 5: the end is inside the slot, the end is in contact with the outer wall of the storage rack 1, and it is not in contact with any object. In the states where the end is inside the slot and the end is in contact with the outer wall of the storage rack 1, the photoelectric switch 6 is in the trigger state.

[0029] Furthermore, the locking member 8 includes a locking sleeve 81 disposed outside the sealed container 3, a limiting block 82 slidably disposed inside the locking sleeve 81, an elastic member 83 connected to the inner wall of the locking sleeve 81 on one side end of the limiting block 82, and a pressing rod 84 slidably connected inside the locking sleeve 81 extending to the outside of the locking sleeve 81 and abutting against the storage rack 1.

[0030] Furthermore, both sides of the bottom wall of the limiting block 82 are inclined, and the two inclined surfaces are pressed against the extrusion rod 84 and the outer top wall of the sealing plate 7, respectively.

[0031] Furthermore, the sealing plate 7 and the sealing tank 3 are rotatably connected by a hinge, the locking sleeve 81 is positioned opposite the hinge, and the elastic piece 4 and the locking sleeve 81 are located on the same side.

[0032] During use, when the storage rack 1 is connected to the sealed container 3, the storage rack 1 abuts against the extrusion rod 84 and the extrusion rod 84 abuts against the limiting block 82, so that the other inclined surface of the limiting block 82 presses against the sealing plate 7, thereby keeping the sealing plate 7 in a locked state.

[0033] When the storage rack 1 is disconnected from the sealed container 3, the compression rod 84 no longer abuts against the limiting block 82. Under the action of the elastic element 83, the limiting block 82 moves and no longer compresses the sealing plate 7. At this time, the sealing plate 7 can move freely.

[0034] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A clinker auxiliary R&D device with identification function, comprising a storage rack (1), characterized in that: The storage rack (1) is equipped with a timer (2) on its exterior. The storage rack (1) contains a sealed container (3) extending to its exterior. The storage rack (1) contains an elastic sheet (4). The other end of the elastic sheet (4) is connected to a trigger-type locking block (5) that limits the position of the sealed container (3). The storage rack (1) contains a photoelectric switch (6) that corresponds to the position of the trigger-type locking block (5) and can sense its current position. The photoelectric switch (6) is linked with the timer (2). The top of the sealed container (3) is hinged with a sealing plate (7). The sealed container (3) is equipped with a locking member (8) whose output end is linked with the sealing plate (7) to lock it and whose input end abuts against the storage rack (1). The sealed container (3) is equipped with an identification sticker.

2. The clinker-assisted R&D device with identification function according to claim 1, characterized in that: The storage rack (1) has a damping pad that is pressed against the outer wall of the sealed container (3) inside. The bottom side of the sealed container (3) is provided with a chamfer that can drive the trigger-type locking block (5) to move.

3. The clinker-assisted R&D device with identification function according to claim 1, characterized in that: The side wall of the sealed container (3) is provided with a slot. The trigger-type locking block (5) extends into the slot and triggers the photoelectric switch (6) when it is inside the slot. The slot is arc-shaped and the trigger-type locking block (5) is adapted to its shape and size.

4. The clinker-assisted R&D device with identification function according to claim 1, characterized in that: The locking element (8) includes a locking sleeve (81) disposed outside the sealed container (3), a limiting block (82) is slidably disposed inside the locking sleeve (81), an elastic element (83) is provided on one side end of the limiting block (82) and connected to the inner wall of the locking sleeve (81), and a pressing rod (84) is slidably connected inside the locking sleeve (81) extending to the outside of the locking sleeve (81) and abutting against the storage rack (1).

5. The clinker-assisted R&D device with identification function according to claim 4, characterized in that: The bottom wall of the limiting block (82) is set with inclined surfaces on both sides, and the inclined surfaces on both sides are pressed against the outer top wall of the extrusion rod (84) and the sealing plate (7).

6. The clinker-assisted R&D device with identification function according to claim 5, characterized in that: The sealing plate (7) and the sealing tank (3) are rotatably connected by a hinge. The locking sleeve (81) is positioned opposite to the hinge. The elastic plate (4) and the locking sleeve (81) are located on the same side.